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Wear Behavior of Mechanically Alloyed Ti-Based Bulk Metallic Glass Composites Containing Carbon Nanotubes

机译:机械合金化的含碳纳米管的钛基块状金属玻璃复合材料的磨损行为

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The present paper reports the preparation and wear behavior of mechanically alloyed Ti-based bulk metallic glass composites containing carbon nanotube (CNT) particles. The differential scanning calorimeter results show that the thermal stability of the amorphous matrix is affected by the presence of CNT particles. Changes in glass transition temperature ( T g ) and crystallization temperature ( T x ) suggest that deviations in the chemical composition of the amorphous matrix occurred because of a partial dissolution of the CNT species into the amorphous phase. Although the hardness of CNT/Ti 50 Cu 28 Ni 15 Sn 7 bulk metallic glass composites is increased with the addition of CNT particles, the wear resistance of such composites is not directly proportional to their hardness, and does not follow the standard wear law. A worn surface under a high applied load shows that the 12 vol. % CNT/Ti 50 Cu 28 Ni 15 Sn 7 bulk metallic glass composite suffers severe wear compared with monolithic Ti 50 Cu 28 Ni 15 Sn 7 bulk metallic glass.
机译:本文报道了含碳纳米管(CNT)颗粒的机械合金化钛基块状金属玻璃复合材料的制备和磨损行为。差示扫描量热仪结果表明,无定形基体的热稳定性受CNT颗粒的存在影响。玻璃化转变温度(T g)和结晶温度(T x)的变化表明,由于CNT种类部分溶解到非晶相中,导致非晶基质的化学组成发生偏差。尽管CNT / Ti 50 Cu 28 Ni 15 Sn 7块状金属玻璃复合材料的硬度随着CNT颗粒的添加而增加,但是这种复合材料的耐磨性并不直接与其硬度成正比,并且不遵循标准的磨损定律。在高施加负载下的磨损表面表明12 vol。与整体式Ti 50 Cu 28 Ni 15 Sn 7块状金属玻璃相比,%CNT / Ti 50 Cu 28 Ni 15 Sn 7块状金属玻璃复合材料遭受严重的磨损。

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